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Influence of pumped-storage hydroelectric plant operation on a shallow polymictic lake: Predictions from 3-D hydrodynamic modeling

机译:抽水蓄能电站的运行对浅水湖泊的影响:基于3-D水动力模型的预测

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Pumped-storage hydroelectric plants play important roles in electrical supply grids by providing electricity during periods of peak demand, storing renewable energy and controlling supply frequency. The pumping of water from a lower lake or reservoir to an upper impoundment and the return of that water during power generation can strongly affect the properties of pumped-storage reservoirs, however. For example, plant operation has been found to delay, weaken or eliminate thermal stratification, resuspend bottom sediments and entrain organisms. The aim of this study was to better understand the impacts of a proposed pumped-storage facility on stratification, mixing and sediment resuspension in Lake Elsinore, a shallow, polymictic lake in southern California. Three-dimensional hydrodynamic simulations were conducted using the Environmental Fluid Dynamics Code (EFDC). Model simulations demonstrated regular variations in the lake surface elevation of 0.24-0.5 m associated with pumping and generation, although a large shore-mounted intake structure resulted in quite low velocities near the intake (<6 cm/s), bottom shear values below the assumed critical threshold for resuspension (<0.1 N/m~2), and limited overall effect on stratification and mixing in the lake. Entrainment of larval fish and other planktonic organisms remains a concern, however.
机译:抽水蓄能式水力发电厂通过在需求高峰期提供电力,存储可再生能源并控制供电频率,在电网中发挥重要作用。但是,将水从较低的湖泊或水库泵送到较高的蓄水库以及在发电过程中这些水的回流会严重影响抽水蓄能库的性能。例如,发现工厂运行会延迟,减弱或消除热分层,重悬底部沉积物并夹带生物。这项研究的目的是更好地了解拟议中的抽水蓄能设施对加利福尼亚南部的浅浅多晶体湖泊埃尔西诺尔湖的分层,混合和沉积物再悬浮的影响。使用环境流体动力学规范(EFDC)进行了三维流体动力学模拟。模型模拟表明,与抽水和发电相关的湖面海拔高度为0.24-0.5 m的规律变化,尽管大型岸上安装的进水口结构导致进水口附近的流速非常低(<6 cm / s),底部剪力值低于进水口。假定重新悬浮的临界阈值(<0.1 N / m〜2),并且对湖泊分层和混合的总体影响有限。然而,仍然需要关注幼体鱼和其他浮游生物的夹带。

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